import pxyq # main function call is `pxyq.column('ASSET')` ASSET = 'AUDCADc' digits = pxyq.true_decimal_digits(ASSET) # AUDCADc has 5 decimal digits sl_distance = 0.00841 betsize = 231 # cash # lotsize = "missing" lotsize_decimal_digits = 2 cash_decimal_digits = 2 # ml_50 = "missing" # margin with leverage 50 # ml_100 = "missing" # margin with leverage 100 # ml_200 = "missing" # margin with leverage 200 # ml_300 = "missing" # margin with leverage 1000 # use float because the cells we are calling is best suited for floats proxy_sl_distance = float(pxyq.proxy_stoploss_distance_covering_1_cash(ASSET)) proxy_betsize = 1 # proxies is always cover or equivalent to 1 cash proxy_lotsize = float(pxyq.proxy_lotsize_covering_1_cash(ASSET)) proxy_ml_50 = float(pxyq.proxy_margin_with_leverage_50_covering_1_cash(ASSET)) proxy_ml_100 = float(pxyq.proxy_margin_with_leverage_100_covering_1_cash(ASSET)) proxy_ml_200 = float(pxyq.proxy_margin_with_leverage_200_covering_1_cash(ASSET)) proxy_ml_1000 = float(pxyq.proxy_margin_with_leverage_1000_covering_1_cash(ASSET)) # calculate for lotsize and margins with leverages # lotsize lotsize = ((proxy_sl_distance / proxy_betsize) * proxy_lotsize) / (sl_distance / betsize) # margin with leverage ml_50 = (proxy_ml_50 * lotsize) / proxy_lotsize ml_100 = (proxy_ml_100 * lotsize) / proxy_lotsize ml_200 = (proxy_ml_200 * lotsize) / proxy_lotsize ml_1000 = (proxy_ml_1000 * lotsize) / proxy_lotsize # cli output print(f"Lotsize for {ASSET}: {lotsize:.{lotsize_decimal_digits}f} lot, which is equivalent to a betsize of {betsize:.{cash_decimal_digits}f} cash") print(f"The margin with leverage 1:50 for {ASSET} lotsize of {lotsize:.{lotsize_decimal_digits}f} is {ml_50:.{cash_decimal_digits}f} cash") print(f"The margin with leverage 1:100 for {ASSET} lotsize of {lotsize:.{lotsize_decimal_digits}f} is {ml_100:.{cash_decimal_digits}f} cash") print(f"The margin with leverage 1:200 for {ASSET} lotsize of {lotsize:.{lotsize_decimal_digits}f} is {ml_200:.{cash_decimal_digits}f} cash") print(f"The margin with leverage 1:1000 for {ASSET} lotsize of {lotsize:.{lotsize_decimal_digits}f} is {ml_1000:.{cash_decimal_digits}f} cash") print(f"Which all covers the stoploss distance of {ASSET}: {sl_distance:.{digits}f}") """ # cli output sample Lotsize for AUDCADc: 0.39 lot, which is equivalent to a betsize of 231.00 cash The margin with leverage 1:50 for AUDCADc lotsize of 0.39 is 767.98 cash The margin with leverage 1:100 for AUDCADc lotsize of 0.39 is 383.99 cash The margin with leverage 1:200 for AUDCADc lotsize of 0.39 is 192.09 cash The margin with leverage 1:1000 for AUDCADc lotsize of 0.39 is 38.42 cash Which all covers the stoploss distance of AUDCADc: 0.00841 """